Wallboard assembly of container and container

By introducing a connection structure between the inner wall panels and the truss in the container, and utilizing a combination of horizontal, vertical, and inclined beams, the structural strength of the container is improved, the problem of easy deformation of the wall panels is solved, and it is suitable for loading and transporting large cargo.

CN224029830UActive Publication Date: 2026-03-24QINGDAO CIMC CONTAINER MFG +2
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing container wall structure has low strength, especially the non-metallic or low-strength metal materials, which makes the container easy to deform when loading large cargo, resulting in low safety and limited application.

Method used

The structure employs a connection between the interior wall panels and the truss, which includes horizontal beams, vertical beams, and inclined beams to form an accommodating space. The ends of the inclined beams extend to the corners to enhance the structural strength.

Benefits of technology

It improves the structural strength of containers, making them suitable for loading and transporting large cargo, and expands their application range.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wallboard assembly of a container and the container, the wallboard assembly comprises an inner wallboard and a truss, and the inner wallboard is a flat plate. The truss is riveted with the inner wall plate and / or connected with the inner wall plate through mucilage glue, and the truss comprises a horizontal beam, a vertical beam and an inclined beam. The horizontal beams extend in the length direction or the width direction of the container. The vertical beams extend in the height direction of the container. The inclined beam, the horizontal beam and the vertical beam are obliquely arranged and are parallel to the inner wall plate; wherein the horizontal beam and the vertical beam are connected and form a containing space used for containing the inclined beam in a surrounding mode, and the end portion of the inclined beam extends to the corner portion of the containing space and is connected to the vertical beam and / or the horizontal beam. According to the wallboard assembly of the container, the structural strength is improved, and the wallboard assembly is suitable for loading and transporting large goods and wide in application range.
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Description

Technical Field

[0001] This utility model relates generally to the technical field of containers, and more specifically to a container wall panel assembly and a container. Background Technology

[0002] Currently, for container types with flat wall panels, the low structural strength of the flat panels makes them prone to deformation during use, potentially leading to container damage and compromised safety. This is especially true when the wall panels are made of non-metallic materials (such as resin-based composite panels, composite wood panels, etc.) or low-strength metallic materials (such as aluminum alloys), which limits the container's structural strength and makes it unsuitable for loading and transporting large cargo, thus restricting its application. Utility Model Content

[0003] The utility model description section introduces a series of simplified concepts, which will be further explained in detail in the detailed description section. This utility model description section is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.

[0004] To at least partially solve the above problems, the first aspect of this utility model provides a wall panel assembly for a container, the wall panel assembly comprising:

[0005] Interior wall panel, wherein the interior wall panel is constructed as a flat plate; and

[0006] A truss, riveted and / or adhesively connected to the inner wall panel, the truss comprising:

[0007] Horizontal beams extending along the length or width of the container; vertical beams extending along the height of the container; and

[0008] Inclined beams, which, along with the horizontal beams and the vertical beams, are inclined and parallel to the inner wall panels;

[0009] The horizontal beam is connected to the vertical beam and surrounds it to form a receiving space for accommodating the inclined beam, and the end of the inclined beam extends to the corner of the receiving space.

[0010] According to the first aspect of this utility model, the container wall panel assembly adopts the connection between the inner wall panel and the truss, which improves the structural strength of the container wall panel assembly; in addition, the truss includes horizontal beams, vertical beams and inclined beams, the horizontal beams are connected to the vertical beams and surround to form an accommodating space, and the ends of the inclined beams extend to the corners of the accommodating space, thereby further improving the structural strength of the wall panel assembly and the container, which is suitable for loading and transporting large cargo and has a wide range of applications.

[0011] Optionally, the end of the inclined beam is connected to the vertical beam and / or the horizontal beam.

[0012] Optionally, at least a portion of the vertical beams are constructed as corner posts of the container.

[0013] Optionally, at least a portion of the horizontal beams may be constructed as the top or bottom frame beams of the container.

[0014] Optionally, the wall panel assembly includes two horizontal beams, which are respectively configured as the top frame beam or the bottom frame beam of the container; or

[0015] The wall panel assembly includes at least three horizontal beams, two of which are respectively configured as the top frame beam and the bottom frame beam of the container, and the horizontal beams and the vertical beams surround each other to form at least two accommodating spaces.

[0016] Optionally, the wall panel assembly includes two vertical beams, each of which is configured as a corner post of the container.

[0017] Optionally, the wall panel assembly includes at least three of the vertical beams, two of which are configured as corner posts of the container.

[0018] Optionally, the two ends of the inclined beam extend to two adjacent accommodating spaces.

[0019] Optionally, at least two inclined beams are arranged within a single accommodating space, and the at least two inclined beams are arranged at an angle.

[0020] Optionally, the inclined beam is welded to the vertical beam and the horizontal beam; or

[0021] The truss also includes a connecting plate located at the corner of the accommodating space and connected to the vertical beam and the horizontal beam, the end of the inclined beam being connected to the connecting plate by fasteners.

[0022] Optionally, the vertical beam includes:

[0023] Parallel portion, the parallel portion being parallel to the inner wall panel;

[0024] The mounting part is disposed between the parallel part and the inner wall panel. The mounting part is provided with a mating surface for fitting to the inner wall panel. The mating surface and the side wall of the inner wall panel are connected by structural adhesive, and / or the mounting part is connected to the inner wall panel by rivets.

[0025] A connecting portion, which connects to the mounting portion and the parallel portion.

[0026] Optionally, the vertical beam includes two mounting portions, which are arranged on both sides of the parallel portion along the width direction of the vertical beam; the first side of the mounting portion is connected to the connecting portion, and the second side of the mounting portion faces away from the connecting portion along the width direction of the vertical beam.

[0027] Optionally, along the width direction of the vertical beam, the second sides of the two mounting portions are arranged close to each other or far apart from each other.

[0028] Optionally, along the width direction of the vertical beam, the second sides of the two mounting portions face the same side.

[0029] Optionally, the second sides of the two mounting portions are connected together along the width direction of the vertical beam.

[0030] A second aspect of this utility model provides a container, including the wall panel assembly of the container according to the above description.

[0031] The container according to the second aspect of this utility model has high structural strength, is suitable for loading and transporting large goods, and has a wide range of applications.

[0032] Optionally, the container further includes a top crossbeam, a top longitudinal beam, and a reinforcing plate, the reinforcing plate being connected to the top longitudinal beam; the top crossbeam is connected above the top longitudinal beam along the height direction of the container; the wall panel assembly includes a truss, the truss including a vertical beam, the vertical beam being connected to the top longitudinal beam;

[0033] Along the length of the container, the top crossbeam, the vertical beam, and the reinforcing plate at least partially overlap.

[0034] Optionally, the truss further includes horizontal beams, at least a portion of which are constructed as the bottom longitudinal beams of the container, and the bottom longitudinal beams are provided with forks;

[0035] Along the length of the container, the ends of the fork, the vertical beam, and the inclined beam at least partially overlap. Attached Figure Description

[0036] The following drawings, which illustrate embodiments of the present invention, are incorporated herein as part of the present invention for understanding the invention. The drawings show embodiments of the present invention and their descriptions, serving to explain the principles of the present invention. In the drawings,

[0037] Figure 1 This is a schematic diagram of the container wall panel assembly as a side wall panel of a container, representing the first preferred embodiment of the present invention.

[0038] Figure 2A schematic diagram illustrating one implementation of a wall panel assembly as an end wall panel of a container;

[0039] Figure 3 A schematic diagram illustrating another implementation of the wall panel assembly as the end wall panel of a container;

[0040] Figure 4 This is a schematic diagram of the container wall panel assembly as a side wall panel of a container, representing the second preferred embodiment of the present invention.

[0041] Figure 5 This is a schematic diagram of the container wall panel assembly as a side wall panel of a container, representing the third preferred embodiment of the present invention.

[0042] Figure 6 This is a schematic diagram of the container wall panel assembly as a side wall panel of a container, representing the fourth preferred embodiment of the present invention.

[0043] Figure 7 This is a schematic diagram of the container wall panel assembly as a side wall panel of a container, according to the fifth preferred embodiment of the present invention.

[0044] Figure 8 This is a schematic diagram of the container wall panel assembly as a side wall panel of a container, according to the sixth preferred embodiment of the present invention.

[0045] Figure 9 For along Figure 1 A schematic diagram of the cross-section intercepted by the centerline AA;

[0046] Figure 10 This is a schematic diagram showing the connection between the vertical beam and the inner wall panel in some other preferred embodiments of the present invention;

[0047] Figure 11 This is a schematic diagram showing the connection between the vertical beam and the inner wall panel in some preferred embodiments of the present invention; and

[0048] Figure 12 This is a schematic diagram showing the connection between the vertical beam and the inner wall panel in some preferred embodiments of the present invention.

[0049] Explanation of reference numerals in the attached figures

[0050] 100: Wall panel assembly; 101: Corner piece

[0051] 102: Bottom corner piece; 103: Corner post

[0052] 104: Top longitudinal beam; 105: Top end beam

[0053] 106: Bottom longitudinal beam; 107: Bottom end beam

[0054] 108: Top beam 109: Top slab

[0055] 140: Reinforcing plate 141: Fork

[0056] 110: Interior wall panel; 120: Truss

[0057] 121: Horizontal beam 122: Vertical beam

[0058] 123: Inclined beam 124: Accommodation space

[0059] 425: Connecting plate; 430: Fastener

[0060] 125: Parallel section 126: Mounting section

[0061] 127: Connecting part; 128: Mating surface

[0062] 130: Rivet; D1: Height direction of the container.

[0063] D2: Length direction of the container; D3: Width direction of the container.

[0064] D4: Width direction of the vertical beam; D5: Thickness direction of the vertical beam. Detailed Implementation

[0065] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that embodiments of the present invention may be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described in order to avoid confusion with embodiments of the present invention.

[0066] In this document, ordinal numbers such as "first" and "second" used in this invention are merely identifiers and do not have any other meaning, such as a specific order. Moreover, for example, the term "first component" does not imply the existence of "second component," and the term "second component" does not imply the existence of "first component."

[0067] In this article, terms such as "up," "down," "front," "back," "left," and "right" are used only to indicate the relative positional relationship between related parts, rather than to define the absolute position of these related parts.

[0068] In this document, terms such as “equal” and “same” are not strict mathematical and / or geometric limitations, but also include errors that are understandable to those skilled in the art and permissible in manufacturing or use.

[0069] Unless otherwise stated, the numerical ranges in this document include not only the entire range within its two endpoints, but also the subranges contained therein.

[0070] Figures 1 to 12 A wall panel assembly 100 for a container according to the present invention is shown. The wall panel assembly 100 includes an inner wall panel 110 and a truss 120. The inner wall panel 110 is constructed as a flat plate. The truss 120 is riveted to or adhesively connected to the inner wall panel 110, or the truss 120 is riveted to and also adhesively connected to the inner wall panel 110. The truss 120 includes a horizontal beam 121, a vertical beam 122, and an inclined beam 123. The horizontal beam 121 extends along the length direction D2 or the width direction D3 of the container. The vertical beam 122 extends along the height direction D1 of the container. The inclined beam 123 is inclined to both the horizontal beam 121 and the vertical beam 122 and is parallel to the inner wall panel 110.

[0071] The horizontal beam 121 is connected to the vertical beam 122 and surrounds each other to form a receiving space 124 for accommodating the inclined beam 123, the end of the inclined beam 123 extending to the corner of the receiving space 124.

[0072] According to the present invention, the container wall panel assembly 100 adopts the connection between the inner wall panel 110 and the truss 120, which improves the structural strength of the container wall panel assembly 100. In addition, the truss 120 includes a horizontal beam 121, a vertical beam 122 and an inclined beam 123. The horizontal beam 121 is connected to the vertical beam 122 and surrounds to form an accommodating space 124, while the end of the inclined beam 123 extends to the corner of the accommodating space 124, thereby further improving the structural strength of the wall panel assembly 100 and the container. It is suitable for loading and transporting large goods and has a wide range of applications.

[0073] Optionally, the end of the inclined beam 123 can be connected to either the vertical beam 122 or the horizontal beam 121, or the end of the inclined beam 123 can be connected to either the vertical beam 122 or the horizontal beam 121, both of which can improve the structural strength of the wall panel assembly 100 and the container.

[0074] This utility model also provides a container, including the wall panel assembly 100 of the container according to the above-described container. The container according to this utility model has high structural strength, is suitable for loading and transporting large goods, and has a wide range of applications.

[0075] Combination Figures 1 to 3 As shown, the container also includes a top frame, a bottom frame, and corner posts 103. The top frame includes a top longitudinal beam 104, a top top beam 105, and top corner pieces 101. The top longitudinal beam 104 extends along the length direction D2 of the container, the top top beam 105 extends along the width direction D3 of the container, and the top corner pieces 101 are arranged at the four corners of the container and connected to the ends of the top longitudinal beam 104 and the ends of the top top beam 105.

[0076] Reference Figure 1 The top frame also includes a top plate 109 and a top crossbeam 108. Along the height direction D1 of the container, the bottom surface of the top plate 109 is connected to the top surface of the top longitudinal beam 104 and the top surface of the top beam 105, while the top crossbeam 108 is connected to the top surface of the top plate 109, thereby strengthening the top plate 109.

[0077] Optionally, the container also includes a reinforcing plate 140, which is connected to the top longitudinal beam 104 to reinforce the top longitudinal beam 104.

[0078] Optionally, the reinforcing plate 140 is L-shaped, with its first end connected to the bottom surface of the top plate 109 and its second end connected to the side wall of the top longitudinal beam 104, thereby strengthening the connection between the top plate 109 and the top longitudinal beam 104.

[0079] Alternatively, the reinforcing plate 140 may also be U-shaped, with both ends of the reinforcing plate 140 extending to and connecting to the top longitudinal beam 104, and the reinforcing plate 140 connecting to the bottom surface of the top plate 109, thereby also strengthening the connection strength between the top plate 109 and the top longitudinal beam 104.

[0080] Optionally, the top horizontal beam 108 is arranged above the top plate 109 along the height direction D1, and the top vertical beam 104 is arranged below the top plate 109 along the height direction D1. The top horizontal beam 108, the top plate 109, and the top vertical beam 104 can be connected by rivets, or by structural adhesive, or by a combination of rivets and structural adhesive, all of which can achieve a stable connection between the top horizontal beam 108, the top plate 109, and the top vertical beam 104.

[0081] Alternatively, the top longitudinal beam 104 may be configured to form a longitudinal groove extending along the length direction D2 of the container, and the reinforcing plate 140 may be disposed in the longitudinal groove of the top longitudinal beam 104 and connected to the inner wall of the longitudinal groove. The reinforcing plate 140 is perpendicular to the length direction D2 of the container and is arranged at intervals along the length direction D2 of the container, thereby strengthening the structural strength of the top longitudinal beam 104.

[0082] Furthermore, along the length direction D2 of the container, the top crossbeam 108, the vertical beam 122, and the reinforcing plate 140 at least partially overlap, thereby enhancing the structural strength of the container.

[0083] Combination Figures 1 to 3As shown, the underframe includes a bottom longitudinal beam 106, a bottom end beam 107, and bottom corner brackets 102. The bottom longitudinal beam 106 extends along the length direction D2 of the container, the bottom end beam 107 extends along the width direction D3 of the container, and the bottom corner brackets 102 are located at the four corners of the container and connected to the ends of the bottom longitudinal beam 106 and the bottom end beam 107. Corner posts 103 are located at the four corners of the container, with the upper end of the corner post 103 connected to the top corner bracket 101 and the lower end of the corner post 103 connected to the bottom corner bracket 102.

[0084] The specific structure of the container and the container wall panel assembly 100 according to the present invention will be described in detail below with reference to the accompanying drawings and several specific embodiments.

[0085] First Implementation Method

[0086] Figure 1 The wall panel assembly 100 shown serves as a side wall panel of a container according to the first embodiment. Figure 2 The wall panel assembly 100 shown can serve as an end wall panel at one end of the container according to the first embodiment. Figure 3 The wall panel assembly 100 shown can serve as an end wall panel at the other end of the container according to the first embodiment. It is understood that... Figure 2 and Figure 3 The wall panel assembly 100 shown is not limited to the first embodiment, but has Figure 2 or Figure 3 All containers of the wall panel assembly 100 shown should be protected within the scope of this utility model.

[0087] Depend on Figure 1 As can be seen, the truss 120 of the side wall panel assembly 100, serving as the side wall panel of the container, includes five vertical beams 122 and two horizontal beams 121. The five vertical beams 122 are arranged at intervals along the length D2 of the container, with two vertical beams 122 forming the two corner posts 103 at both ends of the container, and the remaining three vertical beams 122 positioned between the two corner posts 103. The two horizontal beams 121 form the top frame beam (top longitudinal beam 104) and the bottom frame beam (bottom longitudinal beam 106) of the container, respectively. Therefore, the horizontal beams 121 and the vertical beams 122 together form four accommodating spaces 124 arranged along the length D2 of the container. (Refer to...) Figure 1 The truss 120 of the wall panel assembly 100 includes four inclined beams 123, which are respectively arranged in four accommodating spaces 124, and the two ends of the inclined beams 123 are respectively welded to the opposite corner of the accommodating space 124.

[0088] Depend on Figure 2As can be seen, the truss 120 of the end wall panel assembly 100, which serves as one end of the container, includes two vertical beams 122 and two horizontal beams 121. The two vertical beams 122 are respectively constructed as two corner posts 103 of the container, while the two horizontal beams 121 are respectively constructed as the top beam frame (top beam 105) and bottom beam frame (bottom end beam 107) of the container. The two vertical beams 122 and the two horizontal beams 121 form an accommodating space 124 located at one end of the container. (Refer to...) Figure 2 The truss 120 of the wall panel assembly 100 includes two inclined beams 123, which are arranged at an angle, and the two ends of the two inclined beams 123 are respectively welded to the four corners of the accommodating space 124.

[0089] Depend on Figure 3 It can be seen that the truss 120 of the end wall panel assembly 100, which serves as the other end of the container, may not have the inclined beam 123. The truss 120 includes four vertical beams 122 and two horizontal beams 121. The four vertical beams 122 are arranged at intervals along the width direction D3 of the container. Two of the vertical beams 122 are constructed as two corner posts 103 on both sides of the container, and the other two vertical beams 122 are arranged between the two corner posts 103. The two horizontal beams 121 are constructed as the top frame beam (top beam 105) and the bottom frame beam (bottom beam 107) of the container, respectively. Therefore, the horizontal beams 121 and the vertical beams 122 form three accommodating spaces 124 arranged along the width direction D3 of the container.

[0090] As can be seen from the above, the container according to the first embodiment has high structural strength and is suitable for loading and transporting large cargo, and has a wide range of applications.

[0091] Second Implementation Method

[0092] Reference Figure 4 The container according to the second embodiment differs from the container according to the first embodiment in that the truss 120 of the wall panel assembly 100, which serves as the side wall panel of the container according to the second embodiment, includes three vertical beams 122 and two horizontal beams 121. The three vertical beams 122 are spaced apart along the length direction D2 of the container, with two vertical beams 122 forming two corner posts 103 at both ends of the container, and the other vertical beam 122 positioned between the two corner posts 103. The two horizontal beams 121 are respectively formed as the top frame beam (top longitudinal beam 104) and the bottom frame beam (bottom longitudinal beam 106) of the container. Therefore, the horizontal beams 121 and the vertical beams 122 together form two accommodating spaces 124 arranged along the length direction D2 of the container.

[0093] Reference Figure 4The truss 120 of the wall panel assembly 100 includes four inclined beams 123. The four inclined beams 123 are arranged in pairs in four accommodating spaces 124. The two inclined beams 123 located in the same accommodating space 124 are arranged at an angle, and the two ends of the two inclined beams 123 arranged at an angle are respectively welded to the four corners of the accommodating space 124.

[0094] Depend on Figure 4 The wall panel assembly 100 shown serves as the side wall panel of the container according to the second embodiment, further enhancing structural strength and making it suitable for loading and transporting large cargo, with a wide range of applications.

[0095] Third Implementation Method

[0096] Reference Figure 5 The container according to the third embodiment differs from the container according to the first embodiment in that the truss 120 of the wall panel assembly 100, which serves as the side wall panel of the container according to the third embodiment, includes three vertical beams 122 and three horizontal beams 121. The three vertical beams 122 are spaced apart along the length direction D2 of the container, with two vertical beams 122 forming two corner posts 103 at both ends of the container, and the other vertical beam 122 positioned between the two corner posts 103. The three horizontal beams 121 are spaced apart along the height direction D1 of the container, with two horizontal beams 121 forming the top frame beam (top longitudinal beam 104) and bottom frame beam (bottom longitudinal beam 106) of the container, respectively, and the other horizontal beam 121 positioned between the top longitudinal beam 104 and the bottom longitudinal beam 106 and connected to the two corner posts 103 (vertical beams 122) located at both ends of the container. Therefore, the horizontal beams 121 and the vertical beams 122 form four accommodating spaces 124.

[0097] Reference Figure 5 The truss 120 of the wall panel assembly 100 includes four inclined beams 123, which are respectively arranged in four accommodating spaces 124, and the two ends of the inclined beams 123 are respectively welded to the opposite corner of the accommodating space 124.

[0098] Depend on Figure 5 The wall panel assembly 100 shown serves as the side wall panel of the container according to the third embodiment, further enhancing structural strength and making it suitable for loading and transporting large cargo, with a wide range of applications.

[0099] Fourth Implementation Method

[0100] Reference Figure 6 The container according to the fourth embodiment differs from the container according to the first embodiment in that the connection method between the inclined beam 123 and the accommodating space 124 is different.

[0101] Depend on Figure 6The truss 120 of the wall panel assembly 100 also includes a connecting plate 425. The connecting plate 425 is plate-shaped and located at the corner of the accommodating space 124, connecting to the vertical beam 122 and the horizontal beam 121. The end of the inclined beam 123 is fixed to the connecting plate 425 by fasteners 430, thereby enabling the detachable installation of the inclined beam 123 and facilitating container manufacturing. Furthermore, when the container is not used to load large cargo, the inclined beam 123 can be removed as needed, thereby reducing the weight of the container and facilitating transportation.

[0102] Fifth Implementation Method

[0103] The container according to the fifth embodiment differs from the container according to the first embodiment in that the truss 120 structure of the wall panel assembly 100, which serves as the side wall panel of the container according to the fifth embodiment, is different.

[0104] Reference Figure 7 The inclined beam 123 of the truss 120 according to the fifth embodiment extends to two adjacent accommodating spaces 124 at both ends. In other words, the two ends of the inclined beam 123 are connected to the corners of the two adjacent accommodating spaces 124, which can ensure the structural strength of the truss 120 and the container. In addition, it can simplify the installation operation of the inclined beam 123 and improve the manufacturing efficiency of the container.

[0105] Optionally, refer to Figure 7 The upper end of the inclined beam 123 is connected to the top longitudinal beam 104, and the lower end of the inclined beam 123 is connected to the bottom longitudinal beam 106. The inclined beam 123 is not directly connected to the vertical beam 122, which can also play a role in ensuring the structural strength of the truss 120 and the container.

[0106] In addition, as an alternative, the two ends of the inclined beam 123 can be directly connected to the vertical beam 122 instead of the top longitudinal beam 104 or the bottom longitudinal beam 106, which can also ensure the structural strength of the truss 120 and the container.

[0107] Alternatively, as an alternative, the inclined beam 123 can be connected at one end to the top longitudinal beam 104 and at the other end to the vertical beam 122. Or the inclined beam 123 can be connected at one end to the vertical beam 122 and at the other end to the bottom longitudinal beam 106, which can also ensure the structural strength of the truss 120 and the container.

[0108] Reference Figure 7 Optionally, the bottom longitudinal beam 106 is provided with a fork 141 to facilitate the handling of containers by forklift equipment, and the truss structure strengthens the fork 141.

[0109] Optionally, along the length direction D2 of the container, the lower end of the inclined beam 123, the vertical beam 122, and the fork 141 have overlapping portions. In other words, the lower end of the inclined beam 123 is arranged above the fork 141, which can distribute the load at the fork 141 and help strengthen the structural strength of the bottom longitudinal beam 106.

[0110] Reference Figure 7 Optionally, along the length direction D2 of the container, the top crossbeam 108 and the reinforcing plate 140 are arranged in a one-to-one correspondence, and the vertical beam 122 between the two corner posts 103 is arranged below the reinforcing plate 140 and the top crossbeam 108, thereby further strengthening the structural strength of the container.

[0111] Sixth Implementation Method

[0112] The container according to the sixth embodiment differs from the container according to the fifth embodiment in that the container according to the sixth embodiment has a larger length and a different arrangement of the inclined beams 123.

[0113] In detail, refer to Figure 8 The inclined beam 123 of the truss 120 according to the sixth embodiment extends to the corners of an accommodating space 124 at both ends, which can also ensure the structural strength of the truss 120 and the container. In addition, the upper end of the inclined beam 123 is connected to the top longitudinal beam 104, and the lower end of the inclined beam 123 is connected to the bottom longitudinal beam 106. The inclined beam 123 is not directly connected to the vertical beam 122, which can also play a role in ensuring the structural strength of the truss 120 and the container.

[0114] The container according to the sixth embodiment has a larger length dimension compared to the containers of the aforementioned embodiments. Correspondingly, it employs a greater number of inclined beams 123 and vertical beams 122, which also enables the container according to the sixth embodiment to have good structural strength and a larger transport capacity.

[0115] It is understood that the container according to the present invention may include the wall panel assembly 100 or a combination thereof in the above embodiments, or may have at least one or more wall panel assemblies 100 in the above embodiments.

[0116] Specifically, regarding the connection method between the inner wall panel 110 and the truss 120, the following will further explain... Figures 9 to 12 The connection method between the inner wall panel 110 and the truss 120 (specifically, the vertical beam 122, or the inclined beam 123) is described.

[0117] Reference Figure 9Taking the vertical beam 122 of the first embodiment as an example, the vertical beam 122 includes a parallel portion 125, a mounting portion 126, and a connecting portion 127. The parallel portion 125 is parallel to the inner wall panel 110 and spaced apart from the inner wall panel 110 along the thickness direction D5 of the vertical beam 122. The mounting portion 126 is disposed between the parallel portion 125 and the inner wall panel 110, and the mounting portion 126 is provided with a mating surface 128 for attaching to the inner wall panel 110. The mating surface 128 and the side wall of the inner wall panel 110 are connected by structural adhesive, or the mating surface 128 of the mounting portion 126 and the inner wall panel 110 are connected by rivets 130. Alternatively, the mating surface 128 and the side wall of the inner wall panel 110 can also be connected by structural adhesive and rivets 130, resulting in a more stable connection. The connecting portion 127 connects the mounting portion 126 and the parallel portion 125. The vertical beam 122 is connected to the inner wall panel 110 by structural adhesive, or the vertical beam 122 is also connected to the inner wall panel 110 by rivets 130, or the vertical beam 122 is connected to the inner wall panel 110 by both structural adhesive and rivets 130. This ensures the connection strength between the inner wall panel 110, which is a flat structure, and the truss 120 (specifically the vertical beam 122, or it can be the inclined beam 123), making it suitable for loading and transporting large goods.

[0118] Reference Figure 9 The vertical beam 122 includes two mounting portions 126, which are arranged on both sides of the parallel portion 125 along the width direction D4 of the vertical beam 122. The first side of the mounting portion 126 is connected to the connecting portion 127, and the second side of the mounting portion 126 faces away from the connecting portion 127 along the width direction D4 of the vertical beam 122, thereby forming a larger joint surface 128 on both sides of the vertical beam 122 along the width direction, which enhances the connection strength between the vertical beam 122 and the inner wall panel 110.

[0119] Reference Figure 9 In one embodiment of the vertical beam 122 shown, along the width direction D4 of the vertical beam 122, the second sides of the two mounting portions 126 are arranged close to each other, so that the rivet 130 and the mating surface 128 are covered and shielded by the parallel portion 125, thereby facilitating the maintenance of the stability of the connection between the vertical beam 122 and the inner wall panel 110.

[0120] And reference Figure 10 In one embodiment of the vertical beam 122 shown, along the width direction D4 of the vertical beam 122, the second sides of the two mounting portions 126 are arranged opposite to each other, so that the rivet 130 and the mating surface 128 are located outside the parallel portion 125, thereby facilitating the assembly operation between the vertical beam 122 and the inner wall panel 110, improving the manufacturing efficiency of the container, and at the same time, giving the vertical beam 122 a larger width dimension, which is beneficial to improving the deformation resistance of the inner wall panel 110.

[0121] like Figure 11 In one embodiment of the vertical beam 122 shown, along the width direction D4 of the vertical beam 122, the second sides of the two mounting portions 126 face the same side, such that the rivet 130 and the mating surface 128 on one side of the vertical beam 122 are covered by the parallel portion 125, while the rivet 130 and the mating surface 128 on the other side of the vertical beam 122 are located outside the parallel portion 125, which achieves a good balance between assembly convenience and connection stability.

[0122] For example Figure 12 In one embodiment of the vertical beam 122 shown, the second sides of two mounting portions 126 are connected together along the width direction D4 of the vertical beam 122. Alternatively, the vertical beam 122 may include only one mounting portion 126, thus closing the vertical beam 122 and further enhancing its structural strength, which is beneficial for improving the overall structural strength of the container. As for... Figure 11 In one embodiment of the vertical beam 122 shown, the mounting portion 126 can be connected to the inner wall panel 110 via one or more rivets 130. The mating surface 128 of the mounting portion 126 can also be connected to the inner wall panel 110 via structural adhesive, or the mounting portion 126 can be connected to the inner wall panel 110 simultaneously via both structural adhesive and rivets 130. The rivets 130 of the mounting portion 126 can be arranged along the length or width direction D4 of the vertical beam 122, ensuring a stable and effective connection to the inner wall panel 110.

[0123] Unless otherwise defined, the technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used herein is for descriptive purposes only and is not intended to limit the scope of the invention. Terms such as “set” appearing herein can refer to either a component being directly attached to another component or a component being attached to another component via an intermediary. A feature described in one embodiment may be applied, alone or in combination with other features, to another embodiment, unless that feature is not applicable in that other embodiment or is otherwise stated.

[0124] This utility model has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit this utility model to the described embodiments. Those skilled in the art will understand that many more variations and modifications can be made based on the teachings of this utility model, and all such variations and modifications fall within the scope of protection claimed by this utility model.

Claims

1. A wall panel assembly for a shipping container, characterized by, The wall plate assembly comprises: an inner wall plate configured as a flat plate; and a truss riveted and / or connected by adhesive to the inner wall plate, the truss comprising: horizontal beams extending along a length direction or a width direction of the container; vertical beams extending along a height direction of the container; and inclined beams obliquely arranged with the horizontal beams and the vertical beams and parallel to the inner wall plate; wherein the horizontal beams and the vertical beams are connected and surround a receiving space for receiving the inclined beams, and end portions of the inclined beams extend to corner portions of the receiving space.

2. The wall panel assembly of a shipping container as defined in claim 1, wherein, The end portions of the inclined beams are connected to the vertical beams and / or the horizontal beams.

3. The wall panel assembly of a shipping container of claim 1, wherein, At least part of the vertical beams are configured as corner columns of the container.

4. A wall panel assembly for a shipping container as claimed in claim 3 wherein, At least part of the horizontal beams are configured as top frame beams or bottom frame beams of the container.

5. A wall panel assembly for a shipping container as claimed in claim 4 wherein, The wall plate assembly comprises two horizontal beams, which are respectively configured as top frame beams or bottom frame beams of the container; or The wall plate assembly comprises at least three horizontal beams, two of which are respectively configured as top frame beams and bottom frame beams of the container, and the horizontal beams and the vertical beams surround at least two receiving spaces.

6. A wall panel assembly for a shipping container as claimed in claim 5 wherein, The wall plate assembly comprises two vertical beams, which are respectively configured as corner columns of the container.

7. The wall panel assembly of a shipping container as defined in claim 5 wherein, The wall plate assembly comprises at least three vertical beams, two of which are configured as corner columns of the container.

8. A wall panel assembly for a shipping container as claimed in claim 7, wherein, The two end portions of the inclined beams respectively extend to two adjacent receiving spaces.

9. The wall panel assembly of a shipping container of claim 1, wherein, At least two inclined beams are arranged in a single receiving space, and the at least two inclined beams are arranged at an angle.

10. The wall plate assembly of the container according to claim 1, wherein the inclined beams are welded to the vertical beams and the horizontal beams; or the truss further comprises a connecting plate located at a corner portion of the receiving space and connected to the vertical beams and the horizontal beams, and the end portions of the inclined beams are connected to the connecting plate by fasteners.

11. A wall panel assembly for a shipping container as claimed in any one of claims 1 to 10, wherein, The vertical beams comprise: a parallel portion parallel to the inner wall plate; a mounting portion arranged between the parallel portion and the inner wall plate, the mounting portion being provided with a bonding surface for being attached to the inner wall plate, the bonding surface and a side wall of the inner wall plate being connected by structural adhesive, and / or the mounting portion and the inner wall plate being connected by rivets; a connecting portion connected to the mounting portion and the parallel portion.

12. The wall panel assembly of a shipping container of claim 11, wherein, The vertical beams comprise two mounting portions arranged on both sides of the parallel portion along a width direction of the vertical beams; a first side edge of the mounting portion is connected to the connecting portion, and a second side edge of the mounting portion is arranged away from the connecting portion along the width direction of the vertical beams.

13. The wall panel assembly of a shipping container of claim 12, wherein, Along the width direction of the vertical beams, the second side edges of the two mounting portions are arranged close to each other or away from each other.

14. The wall panel assembly of a shipping container of claim 12, wherein, Along the width direction of the vertical beams, the second side edges of the two mounting portions are arranged toward the same side.

15. The wall panel assembly of a shipping container of claim 13, wherein, Along the width direction of the vertical beams, the second side edges of the two mounting portions are connected together.

16. A container characterized by A wall panel assembly comprising a container according to any one of claims 1 to 15.

17. The container of claim 16, wherein, The container further comprises a top cross beam, a top longitudinal beam, and a reinforcing plate connected to the top longitudinal beam; the top cross beam is connected to the top longitudinal beam above in the height direction of the container; the wall panel assembly comprises a truss comprising vertical beams connected to the top longitudinal beam; The top cross beam, the vertical beams, and the reinforcing plate at least partially overlap in the length direction of the container.

18. The container of claim 17, wherein, The truss further comprises horizontal beams, at least part of the horizontal beams are configured as bottom longitudinal beams of the container, the bottom longitudinal beams are provided with fork openings; The fork openings, the vertical beams, and the end portions of the inclined beams at least partially overlap in the length direction of the container.